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含异噻唑烷酮的非肽类蛋白酪氨酸磷酸酶1B抑制剂设计的结构见解

Structural insights into the design of nonpeptidic isothiazolidinone-containing inhibitors of protein-tyrosine phosphatase 1B.

作者信息

Ala Paul J, Gonneville Lucie, Hillman Milton, Becker-Pasha Mary, Yue Eddy W, Douty Brent, Wayland Brian, Polam Padmaja, Crawley Matthew L, McLaughlin Erin, Sparks Richard B, Glass Brian, Takvorian Amy, Combs Andrew P, Burn Timothy C, Hollis Gregory F, Wynn Richard

机构信息

Incyte Corporation, Wilmington, Delaware 19880, USA.

出版信息

J Biol Chem. 2006 Dec 8;281(49):38013-21. doi: 10.1074/jbc.M607913200. Epub 2006 Oct 6.

DOI:10.1074/jbc.M607913200
PMID:17028182
Abstract

Structural analyses of the protein-tyrosine phosphatase 1B (PTP1B) active site and inhibitor complexes have aided in optimization of a peptide inhibitor containing the novel (S)-isothiazolidinone (IZD) phosphonate mimetic. Potency and permeability were simultaneously improved by replacing the polar peptidic backbone of the inhibitor with nonpeptidic moieties. The C-terminal primary amide was replaced with a benzimidazole ring, which hydrogen bonds to the carboxylate of Asp(48), and the N terminus of the peptide was replaced with an aryl sulfonamide, which hydrogen bonds to Asp(48) and the backbone NH of Arg(47) via a water molecule. Although both substituents retain the favorable hydrogen bonding network of the peptide scaffold, their aryl rings interact weakly with the protein. The aryl ring of benzimidazole is partially solvent exposed and only participates in van der Waals interactions with Phe(182) of the flap. The aryl ring of aryl sulfonamide adopts an unexpected conformation and only participates in intramolecular pi-stacking interactions with the benzimidazole ring. These results explain the flat SAR for substitutions on both rings and the reason why unsubstituted moieties were selected as candidates. Finally, substituents ortho to the IZD heterocycle on the aryl ring of the IZD-phenyl moiety bind in a small narrow site adjacent to the primary phosphate binding pocket. The crystal structure of an o-chloro derivative reveals that chlorine interacts extensively with residues in the small site. The structural insights that have led to the discovery of potent benzimidazole aryl sulfonamide o-substituted derivatives are discussed in detail.

摘要

蛋白质酪氨酸磷酸酶1B(PTP1B)活性位点及抑制剂复合物的结构分析有助于优化一种含有新型(S)-异噻唑烷酮(IZD)膦酸酯模拟物的肽抑制剂。通过用非肽部分取代抑制剂的极性肽主链,同时提高了活性和渗透性。C端伯酰胺被苯并咪唑环取代,该环与Asp(48)的羧基形成氢键,肽的N端被芳基磺酰胺取代,该芳基磺酰胺通过水分子与Asp(48)和Arg(47)的主链NH形成氢键。尽管两个取代基都保留了肽支架有利的氢键网络,但它们的芳环与蛋白质的相互作用较弱。苯并咪唑的芳环部分暴露于溶剂中,仅与瓣片的Phe(182)发生范德华相互作用。芳基磺酰胺的芳环呈现出意想不到的构象,仅与苯并咪唑环发生分子内π-堆积相互作用。这些结果解释了两个环上取代基的平缓构效关系以及选择未取代部分作为候选物的原因。最后,IZD-苯基部分芳环上与IZD杂环邻位的取代基结合在与初级磷酸盐结合口袋相邻的一个小而狭窄的位点。邻氯衍生物的晶体结构表明,氯与小位点中的残基有广泛的相互作用。本文详细讨论了导致发现强效苯并咪唑芳基磺酰胺邻位取代衍生物的结构见解。

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